Search bioRxiv⌕ Search

Biology subjects

Kalita, D. J.

Publications and source records attributed to Kalita, D. J..

2 recordsLinked to original sources

The G-protein-coupled estrogen receptor, a gene co-expressed with ERα in breast tumors, is regulated by estrogen-ERα signalling in ERα positive breast cancer cells.

PurposeThe purpose of this study was to assess the relationship between GPER, a seven transmembrane G-protein coupled estrogen receptor, and ER in breast tumors, and to make inroads into the mechanistic basis and clinical significance. MethodsTCGA-BRCA data was mined to examine the relationship between GPER and ER expression. GPER mRNA, and protein expression were analyzed in ER-positive or -negative breast tumors from two cohorts using immunohistochemistry, western blotting, or RT-qPCR. The Kaplan-Meier Plotter was employed for survival analysis. The influence of estrogen in vivo was studied by examining GPER expression levels in estrus or diestrus mouse mammary tissues, and the impact of 17{beta}-estradiol (E2) administration in juvenile or adult mice. The effect of E2, or propylpyrazoletriol (PPT, an ER agonist) stimulation on GPER expression was studied in MCF-7 and T47D cells, with or without tamoxifen or ER knockdown. ER-binding to the GPER locus was explored by analysing ChIP-seq data (ERP000380), in silico prediction of estrogen response elements, and chromatin immunoprecipitation assay. ResultsClinical data revealed significant positive association between GPER and ER expression in breast tumors. The median GPER expression in ER-positive tumors was significantly higher than ER-negative tumors. High GPER expression was significantly associated with longer overall survival of patients with ER-positive tumors. In vivo experiments showed a positive effect of E2 on GPER expression. E2 induced GPER expression in MCF-7 and T47D cells; an effect mimicked by PPT. Tamoxifen or ER-knockdown blocked the induction of GPER. Estrogen-mediated induction was associated with increased ER occupancy in the upstream region of GPER. ConclusionGPER expression is positively associated with ER in breast tumors, and a transcriptional target of the estrogen-ER signalling axis. More in-depth studies are required to establish the significance of GPER-ER co-expression, and their interplay in breast tumor development, progression, and treatment.

cancer biology↗

Optimization of conditions for conjugation of outer membrane vesicles of Salmonella Typhimurium with oral delivery systems using response surface method

BackgroundOuter membrane vesicles (OMVs) released from Salmonella Typhimurium can become the effective vaccine candidate. For efficient delivery through oral route, the OMVs are conjugated with some delivery systems. The current study was aimed at optimization of conditions required for conjugation of OMVs with nano- or microparticles for maximum entrapment of OMV in terms of protein concentration. MethodsThe OMVs of Salmonella Typhimurium were conjugated under three optimum conditions of pH, temperature and ratio (nanoparticles or microparticles: OMVs) predicted by response surface method. The efficiency of conjugation was determined by entrapment of OMVs in nano/microparticles. ResultThe pH and temperature were not influential conditions in case of conjugation of OMVs with chitosan nanoparticles (Ch-NP) and poly-lactide co-glycolide microparticles (PLG-MP) while they had influence in case of poly(anhydride) nanoparticles. In case of Ch-NP and PLG-MP, the optimum ratio for maximum entrapment was found to be 1:10 and 1:9 respectively. The optimum pH and temperature was found to be 7 and 24{degrees}C respectively for conjugation of poly(anhydride) nanoparticles. The optimized conditions did not alter the protein profile and immunogenic potential of conjugated vaccines.

biochemistry↗